首页> 外文期刊>Journal of testing and evaluation >Influence of Crystallographic Texture on X-ray Residual Stress Measurement for Ti-3wt percent Al-2 Vwt percent Tube Material
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Influence of Crystallographic Texture on X-ray Residual Stress Measurement for Ti-3wt percent Al-2 Vwt percent Tube Material

机译:Ti-3wt%Al-2 Vwt%管材的晶体织构对X射线残余应力测量的影响

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摘要

Some inaccuracies are possible during the near-surface residual stress measurement of textured material by X-ray diffraction using the standard multiexposure technique. Diffraction intensities depend on factors like inclination of the sample, the rotation of the beam, and the position of detectors. Low intensity due to texture can result in increased percentage error observed stress values. Anisotropy of elastic constants in textured materials can further increase the errors in measured stress. In the present study, the effect of texture on residual stress has been studied for seamless Ti-3wt percent Al-2Vwt percent tubes, in pilgered and annealed conditions, by superimposing the residual stress measurements on the pole figure obtained by texture measurement. A general approach has been developed for accurate determination of the stress tensor in textured material. This consists of the selection of inclinations giving rise to high intensity peak, the selection of rotation angles symmetric to the pole figure to get similar intensity from both the detectors (where this is not possible one detector with low intensity is shut off), and the calculation of the bulk X-ray elastic constants using the single crystal elastic data and texture. Cold worked Ti-3wt percent Al-2Vwt percent tubes had the highest stress along the rolling direction and that is compressive in nature. The principal residual stresses in the pilgered tubes were along the rolling and transverse directions, and annealing leads to reduction and reorientation of the stresses.
机译:使用标准的多重曝光技术通过X射线衍射对纹理材料的近表面残余应力进行测量时,可能会出现一些误差。衍射强度取决于诸如样品的倾斜度,光束的旋转以及检测器的位置之类的因素。由于纹理而导致的低强度可能导致观察到的应力值的百分比误差增加。织构化材料中弹性常数的各向异性会进一步增加测量应力的误差。在本研究中,通过将残余应力测量值叠加到通过纹理测量获得的极图上,研究了无缝钎焊的Ti-3wt%Al-2Vwt%管在接缝和退火条件下织构对残余应力的影响。已经开发出一种通用方法来精确确定织构材料中的应力张量。这包括选择产生高强度峰值的倾斜度,选择与极图对称的旋转角度以从两个探测器获得相似的强度(在这种情况下不可能关闭一个强度低的探测器),并且使用单晶弹性数据和织构计算体X射线弹性常数。经过冷加工的Ti-3wt%Al-2Vwt%管沿轧制方向的应力最高,并且本质上是压缩性的。插接管中的主要残余应力沿轧制方向和横向方向,并且退火导致应力的减小和重新定向。

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